For: |
Latiano A, Palmieri O, Valvano MR, D’Incà R, Cucchiara S, Riegler G, Staiano AM, Ardizzone S, Accomando S, Angelis GL, Corritore G, Bossa F, Annese V. Replication of |
---|---|
URL: | https://www.wjgnet.com/1007-9327/full/v14/i29/4643.htm |
Number | Citing Articles |
1 |
Charlie W Lees, Jack Satsangi. Genetics of inflammatory bowel disease: implications for disease pathogenesis and natural history. Expert Review of Gastroenterology & Hepatology 2009; 3(5): 513 doi: 10.1586/egh.09.45
|
2 |
Songül Budak Diler, Fikriye Polat, Serkan Yaraş. The P268S and M863V Polymorphisms of the NOD2/CARD15 Gene in Crohn’s Disease and Ulcerative Colitis. Cytology and Genetics 2019; 53(5): 424 doi: 10.3103/S0095452719050074
|
3 |
Shari Bodofsky, Tony R. Merriman, T.J. Thomas, Naomi Schlesinger. Advances in our understanding of gout as an auto-inflammatory disease. Seminars in Arthritis and Rheumatism 2020; 50(5): 1089 doi: 10.1016/j.semarthrit.2020.06.015
|
4 |
M. Ellen Kuenzig, Jeff Yim, Stephanie Coward, Bertus Eksteen, Cynthia H. Seow, Cheryl Barnabe, Herman W. Barkema, Mark S. Silverberg, Peter L. Lakatos, Paul L. Beck, Richard Fedorak, Levinus A. Dieleman, Karen Madsen, Remo Panaccione, Subrata Ghosh, Gilaad G. Kaplan. The NOD2 -Smoking Interaction in Crohn's Disease is likely Specific to the 1007 fs Mutation and may be Explained by Age at Diagnosis: A Meta-Analysis and Case-Only Study. EBioMedicine 2017; 21: 188 doi: 10.1016/j.ebiom.2017.06.012
|
5 |
Shu-Chen Wei, Ting-An Chang, Te-Hsin Chao, Jinn-Shiun Chen, Jen-Wei Chou, Yenn-Hwei Chou, Chiao-Hsiung Chuang, Wen-Hung Hsu, Tien-Yu Huang, Tzu-Chi Hsu, Chun-Chi Lin, Hung-Hsin Lin, Jen-Kou Lin, Wei-Chen Lin, Yen-Hsuan Ni, Ming-Jium Shieh, I-Lun Shih, Chia-Tung Shun, Yuk-Ming Tsang, Cheng-Yi Wang, Horng-Yuan Wang, Meng-Tzu Weng, Deng-Chyang Wu, Wen-Chieh Wu, Hsu-Heng Yen, Jau-Min Wong. Management of Crohn's disease in Taiwan: consensus guideline of the Taiwan Society of Inflammatory Bowel Disease. Intestinal Research 2017; 15(3): 285 doi: 10.5217/ir.2017.15.3.285
|
6 |
Yi Zhu, HongGang Jiang, ZhiHeng Chen, BoHao Lu, Jin Li, XuNing Shen. Genetic association between IL23R rs11209026 and rs10889677 polymorphisms and risk of Crohn’s disease and ulcerative colitis: evidence from 41 studies. Inflammation Research 2020; 69(1): 87 doi: 10.1007/s00011-019-01296-y
|
7 |
Jie Zhang, Jiebin Chen, Jianjun Gu, Huimin Guo, Weichang Chen. Association of IL23R and ATG16L1 with susceptibility of Crohn’s disease in Chinese population. Scandinavian Journal of Gastroenterology 2014; 49(10): 1201 doi: 10.3109/00365521.2014.936031
|
8 |
Wang-Dong Xu, Qi-Bing Xie, Yi Zhao, Yi Liu. Association of Interleukin-23 receptor gene polymorphisms with susceptibility to Crohn’s disease: A meta-analysis. Scientific Reports 2015; 5(1) doi: 10.1038/srep18584
|
9 |
Devendra K. Amre, David R. Mack, Kenneth Morgan, Alfreda Krupoves, Irina Costea, Philippe Lambrette, Guy Grimard, Jinsong Dong, Houda Feguery, Vytautas Bucionis, Colette Deslandres, Emile Levy, Ernest G. Seidman. Autophagy gene ATG16L1 but not IRGM is associated with Crohnʼs disease in Canadian children. Inflammatory Bowel Diseases 2009; 15(4): 501 doi: 10.1002/ibd.20785
|
10 |
Veronika Csöngei, Luca Járomi, Enikő Sáfrány, Csilla Sipeky, Lili Magyari, Noémi Polgár, Judit Bene, Patrícia Sarlós, Lilla Lakner, Eszter Baricza, Melinda Szabó, Gábor Rappai, Béla Melegh. Interaction between CTLA4 gene and IBD5 locus in Hungarian Crohn’s disease patients. International Journal of Colorectal Disease 2011; 26(9): 1119 doi: 10.1007/s00384-011-1202-z
|
11 |
Gitana Pranculienė, Rūta Steponaitienė, Jurgita Skiecevičienė, Rūta Kučinskienė, Gediminas Kiudelis, Kęstutis Adamonis, Liutauras Labanauskas, Limas Kupčinskas. Associations between NOD2, IRGM and ORMDL3 polymorphisms and pediatric-onset inflammatory bowel disease in the Lithuanian population. Medicina 2016; 52(6): 325 doi: 10.1016/j.medici.2016.11.006
|
12 |
Espen Melum, Andre Franke, Tom H Karlsen. Genome-wide association studies - A summary for the clinical gastroenterologist. World Journal of Gastroenterology 2009; 15(43): 5377-5396 doi: 10.3748/wjg.15.5377
|
13 |
Cinzia Ciccacci, Carlo Perricone, Fulvia Ceccarelli, Sara Rufini, Davide Di Fusco, Cristiano Alessandri, Francesca Romana Spinelli, Enrica Cipriano, Giuseppe Novelli, Guido Valesini, Paola Borgiani, Fabrizio Conti, Jose Crispin. A Multilocus Genetic Study in a Cohort of Italian SLE Patients Confirms the Association with STAT4 Gene and Describes a New Association with HCP5 Gene. PLoS ONE 2014; 9(11): e111991 doi: 10.1371/journal.pone.0111991
|
14 |
Ana Márquez, Concepción Núñez, Alfonso Martínez, Juan Luis Mendoza, Carlos Taxonera, Miguel Fernández-Arquero, Manuel Díaz-Rubio, Emilio G. de la Concha, Elena Urcelay. Role of ATG16L1 Thr300Ala polymorphism in inflammatory bowel disease: A Study in the Spanish population and a meta-analysis. Inflammatory Bowel Diseases 2009; 15(11): 1697 doi: 10.1002/ibd.21001
|
15 |
Tarek Youssef, Shereen A. Saleh, Angie Rund, Iman Montasser, Manal Mohsen, Ola Hazem. Evaluation of interleukin 23 (IL-23) as a non-invasive test of disease severity in patients with ulcerative colitis. Arab Journal of Gastroenterology 2018; 19(3): 116 doi: 10.1016/j.ajg.2018.09.003
|
16 |
Ruggeri Rosario Fabio, Renda Maria Concetta, Civitavecchia Giuseppe, Renna Sara, Orlando Ambrogio, Maggio Aurelio, Cottone Mario. ATG16L1 contribution to Crohnʼs disease risk in Sicily. Inflammatory Bowel Diseases 2011; 17(7): 1635 doi: 10.1002/ibd.21558
|
17 |
Krzysztof Borecki, Iwona Zawada, Nermin Nusret Salkić, Beata Karakiewicz, Grażyna Adler. Relationship between the IL23R SNPs and Crohn’s Disease Susceptibility and Phenotype in the Polish and Bosnian Populations: A Case-Control Study. International Journal of Environmental Research and Public Health 2019; 16(9): 1551 doi: 10.3390/ijerph16091551
|
18 |
Shu-Chen Wei, Yen-Hsuan Ni, Hwai-I. Yang, Yi-Nin Su, Ming-Chu Chang, Yu-Ting Chang, Ming-Jium Shieh, Cheng-Yi Wang, Jau-Min Wong. A hospital-based study of clinical and genetic features of Crohn’s disease. Journal of the Formosan Medical Association 2011; 110(9): 600 doi: 10.1016/j.jfma.2011.07.009
|
19 |
Satoshi Harada, Takatoshi Nakagawa, Shunichi Yokoe, Shoko Edogawa, Toshihisa Takeuchi, Takuya Inoue, Kazuhide Higuchi, Michio Asahi. Autophagy Deficiency Diminishes Indomethacin-Induced Intestinal Epithelial Cell Damage through Activation of the ERK/Nrf2/HO-1 Pathway. The Journal of Pharmacology and Experimental Therapeutics 2015; 355(3): 353 doi: 10.1124/jpet.115.226431
|
20 |
I. Aida, Y. Meddour, H. Kadiri, M. Smara, A. Bousseloub, L. Kecili, L. Gamar, K. Belhocine, M.-A. Boussafsaf, N. Debzi, S. Aouichat-Bouguerra, S. Chaib. T300A variant of AT16L1 gene in a cohort of Algerian Crohn disease patients. Current Research in Translational Medicine 2018; 66(1): 9 doi: 10.1016/j.retram.2018.01.002
|
21 |
Alexander Teml, Susanne Karner, Elke Schaeffeler, Matthias Schwab. Pharmacogenetics and Individualized Therapy. 2012; : 323 doi: 10.1002/9781118116494.ch11
|
22 |
Antonio Rodriguez-Nicolas, Pilar Jiménez, F. David Carmona, Javier Martín, Ana M. Matas Cobos, Francisco Ruiz-Cabello, Eduardo Redondo-Cerezo. Association between Genetic Polymorphisms of Inflammatory Response Genes and Acute Pancreatitis. Immunological Investigations 2019; 48(6): 585 doi: 10.1080/08820139.2019.1576729
|
23 |
Caterina Strisciuglio, Marjolijn Duijvestein, Auke P. Verhaar, Anne Christine W. Vos, Gijs R. van den Brink, Daniel W. Hommes, Manon E. Wildenberg. Impaired autophagy leads to abnormal dendritic cell–epithelial cell interactions. Journal of Crohn's and Colitis 2013; 7(7): 534 doi: 10.1016/j.crohns.2012.08.009
|
24 |
Chao Xuan, Bei-Bei Zhang, Tao Yang, Kai-Feng Deng, Ming Li, Rui-Juan Tian. Association between OCTN1/2 gene polymorphisms (1672C-T, 207G-C) and susceptibility of Crohn's disease: a meta-analysis. International Journal of Colorectal Disease 2012; 27(1): 11 doi: 10.1007/s00384-011-1265-x
|
25 |
Nasser Ebrahimi Daryani, Farnaz Najmi Varzaneh, Mona Hedayat, Mohammad Taher, Elham Farhadi, Mahdi Mahmoudi, Mohammad Hossein Nicknam, Mohammad Bashashati, Nima Rezaei. Interleukin-23 receptor single nucleotide polymorphisms in ulcerative colitis. A study in Iranian populations. Clinics and Research in Hepatology and Gastroenterology 2014; 38(3): 360 doi: 10.1016/j.clinre.2013.12.008
|
26 |
Min Liu, Wenqian Zhu, Jun Wang, Jixiang Zhang, Xufeng Guo, Jing Wang, Jia Song, Weiguo Dong. Interleukin-23 receptor genetic polymorphisms and ulcerative colitis susceptibility: A meta-analysis. Clinics and Research in Hepatology and Gastroenterology 2015; 39(4): 516 doi: 10.1016/j.clinre.2014.10.009
|
27 |
Martin Lacher, Sebastian Schroepf, Antje Ballauff, Peter Lohse, Dietrich Von Schweinitz, Roland Kappler, Sibylle Koletzko. Autophagy 16‐like 1 rs2241880 G allele is associated with Crohn’s disease in German children. Acta Paediatrica 2009; 98(11): 1835 doi: 10.1111/j.1651-2227.2009.01438.x
|
28 |
Josef Wagner, Winnie H. Sim, Justine A. Ellis, Eng K. Ong, Anthony G. Catto-Smith, Donald J. S. Cameron, Ruth F. Bishop, Carl D. Kirkwood, Stefan Bereswill. Interaction of Crohn's Disease Susceptibility Genes in an Australian Paediatric Cohort. PLoS ONE 2010; 5(11): e15376 doi: 10.1371/journal.pone.0015376
|
29 |
Salvatore Cucchiara, Marina Aloi. Textbook of Pediatric Gastroenterology, Hepatology and Nutrition. 2016; : 323 doi: 10.1007/978-3-319-17169-2_28
|
30 |
R J Palomino-Morales, J Oliver, M Gómez-García, M A López-Nevot, L Rodrigo, A Nieto, B Z Alizadeh, J Martín. Association of ATG16L1 and IRGM genes polymorphisms with inflammatory bowel disease: a meta-analysis approach. Genes & Immunity 2009; 10(4): 356 doi: 10.1038/gene.2009.25
|
31 |
Gerald W. Dryden. Locking the Door to Leukocytes: Use of Integrin Inhibitors for the Treatment of Crohn's Disease. Clinical Medicine Insights: Therapeutics 2010; 2 doi: 10.4137/CMT.S4013
|
32 |
Camille Jung, Jean-Frédéric Colombel, Marc Lemann, Laurent Beaugerie, Matthieu Allez, Jacques Cosnes, Gwenola Vernier-Massouille, Jean-Marc Gornet, Jean-Pierre Gendre, Jean-Pierre Cezard, Frank M. Ruemmele, Dominique Turck, Françoise Merlin, Habib Zouali, Christian Libersa, Philippe Dieudé, Nadem Soufir, Gilles Thomas, Jean-Pierre Hugot, Nathan A. Ellis. Genotype/Phenotype Analyses for 53 Crohn’s Disease Associated Genetic Polymorphisms. PLoS ONE 2012; 7(12): e52223 doi: 10.1371/journal.pone.0052223
|
33 |
Li Zhang, Yunjie Lu, Yuzheng Ge, Yun Shi, Xing Wu, Qinghua Xu, Xiaoping Li, Ling Lu, Feng Zhang, Guozhong Yao. Interleukin-23Rrs7517847 T/G Polymorphism Contributes to the Risk of Crohn’s Disease in Caucasians: A Meta-Analysis. Journal of Immunology Research 2015; 2015: 1 doi: 10.1155/2015/279849
|
34 |
David J. Cutler, Michael E. Zwick, David T. Okou, Sampath Prahalad, Thomas Walters, Stephen L. Guthery, Marla Dubinsky, Robert Baldassano, Wallace V. Crandall, Joel Rosh, James Markowitz, Michael Stephens, Richard Kellermayer, Marian Pfefferkorn, Melvin B. Heyman, Neal LeLeiko, David Mack, Dedrick Moulton, Michael D. Kappelman, Archana Kumar, Jarod Prince, Promita Bose, Kajari Mondal, Dhanya Ramachandran, John F. Bohnsack, Anne M. Griffiths, Yael Haberman, Jonah Essers, Susan D. Thompson, Bruce Aronow, David J. Keljo, Jeffrey S. Hyams, Lee A. Denson, Subra Kugathasan, Fabio Cominelli. Dissecting Allele Architecture of Early Onset IBD Using High-Density Genotyping. PLOS ONE 2015; 10(6): e0128074 doi: 10.1371/journal.pone.0128074
|
35 |
Alexandra I. Thompson, Charlie W. Lees. Genetics of ulcerative colitis. Inflammatory Bowel Diseases 2011; 17(3): 831 doi: 10.1002/ibd.21375
|
36 |
Joyce Y. Tung, Chuong B. Do, David A. Hinds, Amy K. Kiefer, J. Michael Macpherson, Arnab B. Chowdry, Uta Francke, Brian T. Naughton, Joanna L. Mountain, Anne Wojcicki, Nicholas Eriksson, Pieter H. Reitsma. Efficient Replication of over 180 Genetic Associations with Self-Reported Medical Data. PLoS ONE 2011; 6(8): e23473 doi: 10.1371/journal.pone.0023473
|
37 |
Christos A. Grigoras, Panayiotis D. Ziakas, Elamparithi Jayamani, Eleftherios Mylonakis. ATG16L1 and IL23R Variants and Genetic Susceptibility to Crohnʼs Disease. Inflammatory Bowel Diseases 2015; 21(4): 768 doi: 10.1097/MIB.0000000000000305
|
38 |
Yi Li, Qing Mao, Li Shen, Yun Tian, Chao Yu, Wei-Ming Zhu, Jie-Shou Li. Interleukin-23 receptor genetic polymorphisms and Crohn’s disease susceptibility: a meta-analysis. Inflammation Research 2010; 59(8): 607 doi: 10.1007/s00011-010-0171-y
|
39 |
Nadia Serbati, Nezha Senhaji, Brehima Diakite, Wafaa Badre, Sellama Nadifi. IL23R and ATG16L1 variants in Moroccan patients with inflammatory bowel disease. BMC Research Notes 2014; 7(1) doi: 10.1186/1756-0500-7-570
|
40 |
Soheila Moein, Mostafa Vaghari‐Tabari, Durdi Qujeq, Maryam Majidinia, Seyed Mohammad Nabavi, Bahman Yousefi. MiRNAs and inflammatory bowel disease: An interesting new story. Journal of Cellular Physiology 2019; 234(4): 3277 doi: 10.1002/jcp.27173
|
41 |
Hai-Feng Zhang, Li-Xin Qiu, Yu Chen, Wa-Li Zhu, Chen Mao, Li-Guang Zhu, Ming-Hua Zheng, Yan Wang, Lei Lei, Jian Shi. ATG16L1 T300A polymorphism and Crohn’s disease susceptibility: evidence from 13,022 cases and 17,532 controls. Human Genetics 2009; 125(5-6): 627 doi: 10.1007/s00439-009-0660-7
|
42 |
James D Doecke, Lisa A Simms, Zhen Zhen Zhao, Rebecca L Roberts, Elizabeth V Fowler, Anthony Croft, Angela Lin, Ning Huang, David C Whiteman, Timothy H J Florin, Murray L Barclay, Tony R Merriman, Richard B Gearry, Grant W Montgomery, Graham L Radford‐Smith. Smoking behaviour modifies IL23r‐associated disease risk in patients with Crohn's disease. Journal of Gastroenterology and Hepatology 2015; 30(2): 299 doi: 10.1111/jgh.12674
|
43 |
Ling-Long Peng, Ying Wang, Feng-Ling Zhu, Wang-Dong Xu, Xue-Lei Ji, Jing Ni. IL-23R mutation is associated with ulcerative colitis: A systemic review and meta-analysis. Oncotarget 2017; 8(3): 4849 doi: 10.18632/oncotarget.13607
|
44 |
Caterina Strisciuglio, Renata Auricchio, Massimo Martinelli, Annamaria Staiano, Francesca Paola Giugliano, Marialuisa Andreozzi, Marina De Rosa, Eleonora Giannetti, Carmela Gianfrani, Paola Izzo, Riccardo Troncone, Erasmo Miele. Autophagy genes variants and paediatric Crohn's disease phenotype: A single-centre experience. Digestive and Liver Disease 2014; 46(6): 512 doi: 10.1016/j.dld.2014.02.016
|
45 |
Isidora Simovic, Ida Hilmi, Ruey Terng Ng, Kee Seang Chew, Shin Yee Wong, Way Seah Lee, Stephen Riordan, Natalia Castaño‐Rodríguez. ATG16L1 rs2241880/T300A increases susceptibility to perianal Crohn's disease: An updated meta‐analysis on inflammatory bowel disease risk and clinical outcomes. United European Gastroenterology Journal 2024; 12(1): 103 doi: 10.1002/ueg2.12477
|
46 |
Oliver Brain, Rachel Cooney, Alison Simmons, Derek Jewell. Functional consequences of mutations in the autophagy genes in the pathogenesis of Crohnʼs disease. Inflammatory Bowel Diseases 2012; 18(4): 778 doi: 10.1002/ibd.21832
|
47 |
Bei-Bei Zhang, Yu Liang, Bo Yang, Ying-Jun Tan. Association between ATG16L1 gene polymorphism and the risk of Crohn’s disease. Journal of International Medical Research 2017; 45(6): 1636 doi: 10.1177/0300060516662404
|
48 |
M Lacher, S Schroepf, J Helmbrecht, D Von Schweinitz, A Ballauff, I Koch, P Lohse, S Osterrieder, R Kappler, S Koletzko. Association of the interleukin‐23 receptor gene variant rs11209026 with Crohn’s disease in German children. Acta Paediatrica 2010; 99(5): 727 doi: 10.1111/j.1651-2227.2009.01680.x
|